首页> 外文期刊>Journal of Chemical Engineering of Japan >Density Functional Theory Study of Sulfur Poisoning on Nickel Anode in Solid Oxide Fuel Cells: Effects of Surface and Subsurface Sulfur Atoms
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Density Functional Theory Study of Sulfur Poisoning on Nickel Anode in Solid Oxide Fuel Cells: Effects of Surface and Subsurface Sulfur Atoms

机译:固体氧化物燃料电池中镍阳极硫中毒的密度泛函理论研究:表面和亚表面硫原子的影响

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摘要

Impurities such as sulfur compounds cause performance degradation in solid oxide fuel cells (SOFCs). We have studied the sulfur poisoning mechanism on an SOFC nickel anode using density functional theory method, focusing on the effects of surface and subsurface sulfur atoms. The binding energy of surface sulfur atoms decreases with an increase in sulfur coverage on the nickel surface. Subsurface sulfur atoms become stable relative to surface sulfur atoms at high sulfur coverage. A subsurface sulfur phase also appears between sulfur adsorption phase and nickel sulfide phase in the calculated phase diagram for Ni-S systems. Influences of sulfur atoms on intermediate adsorbates during surface reactions are also investigated. Sulfur hinders the reaction by destabilizing the reaction intermediates on the nickel surface.
机译:诸如硫化合物之类的杂质会导致固体氧化物燃料电池(SOFC)的性能下降。我们使用密度泛函理论方法研究了SOFC镍阳极上的硫中毒机理,重点研究了表面和亚表面硫原子的影响。表面硫原子的结合能随着镍表面上硫覆盖率的增加而降低。在高硫覆盖率下,地下硫原子相对于表面硫原子变得稳定。在计算得出的Ni-S系统相图中,地下硫相也出现在硫吸附相和硫化镍相之间。还研究了表面反应过程中硫原子对中间吸附物的影响。硫通过使镍表面上的反应中间体不稳定来阻碍反应。

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